Mizukami Takuya, Iso Yoshitaka, Sato Chisato, Sasai Masahiro, Spees Jeffery L, Toyoda Masashi, Umezawa Akihiro, Miyazaki Akira, Suzuki Hiroshi
Division of Cardiology, Showa University Fujigaoka Hospital, Yokohama, Japan.
Department of Biochemistry, Showa University School of Medicine, Tokyo, Japan.
Regen Ther. 2016 Feb 13;4:1-8. doi: 10.1016/j.reth.2016.01.004. eCollection 2016 Jun.
Bone marrow mesenchymal stem cells (BMMSCs) ameliorate tissue damage after ischemic injury. Erythropoietin (Epo) has pleiotropic effects in addition to hematopoietic activity. The aim of this study was to investigate whether Epo enhanced cell survival and angiogenic effect of BMMSC implantation in rat limb ischemia model.
MSCs were isolated from BM in GFP-transgenic rats. In a culture study, Epo promoted BMMSC proliferation in normoxia and enhanced cell survival under the culture condition mimicking ischemia (1% oxygen and nutrient deprivation). BMMSCs with and without 48 h of pretreatment by Epo (80 IU/ml) were locally administered to rat hindlimb ischemia models . At 3 days after implantation, BMMSC engraftment in the perivascular area of the injured muscle was significantly higher in the cells preconditioned with Epo than in the cells without preconditioning. Stromal derived factor-1α and fibroblast growth factor-2 expressions were detected in the engrafted BMMSCs. At 14 days after implantation, the Epo-preconditioned BMMSCs significantly promoted blood perfusion and capillary growth compared to the controls in laser Doppler and histological studies. In addition to promoting neovascularization, the Epo-preconditioned BMMSCs significantly inhibited macrophage infiltration in the perivascular area.
Epo elicited pro-survival potential in the BMMSCs. Pharmacological cell modification with Epo before implantation may become a feasible and promising strategy for improving current therapeutic angiogenesis with BMMSCs.
骨髓间充质干细胞(BMMSCs)可改善缺血性损伤后的组织损伤。促红细胞生成素(Epo)除了具有造血活性外,还具有多种效应。本研究的目的是探讨Epo是否能增强BMMSC植入大鼠肢体缺血模型后的细胞存活和血管生成作用。
从绿色荧光蛋白转基因大鼠的骨髓中分离出间充质干细胞。在一项培养研究中,Epo在常氧条件下促进BMMSC增殖,并在模拟缺血的培养条件(1%氧气和营养缺乏)下提高细胞存活率。将经过和未经过48小时Epo(80IU/ml)预处理的BMMSCs局部注射到大鼠后肢缺血模型中。植入后3天,经Epo预处理的细胞在损伤肌肉血管周围区域的植入率显著高于未预处理的细胞。在植入的BMMSCs中检测到基质衍生因子-1α和成纤维细胞生长因子-2的表达。植入后14天,与对照组相比,经Epo预处理的BMMSCs在激光多普勒和组织学研究中显著促进了血液灌注和毛细血管生长。除了促进新血管形成外,经Epo预处理的BMMSCs还显著抑制了血管周围区域的巨噬细胞浸润。
Epo在BMMSCs中发挥了促存活潜能。植入前用Epo进行药理学细胞修饰可能成为一种可行且有前景的策略,以改善当前BMMSCs治疗性血管生成的效果。